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Pulse pressure--a review of mechanisms and clinical relevance
1Alfred Baker Medical Unit, Alfred Hospital and Baker Medical Research Institute, Melbourne, Australia. a.dart@alfred.org.au
Insights
Pulse pressure (PP) is a cardiovascular risk factor linked to arterial stiffness. Understanding its origins and treatments, like exercise and certain medications, is key for managing heart disease.
Area of Science:
- Cardiovascular Physiology
- Arterial Biomechanics
Background:
- Elevated pulse pressure (PP) is an emerging risk factor for cardiovascular and coronary diseases.
- PP results from the interplay between cardiac ejection and arterial properties.
Purpose of the Study:
- To review the origin, clinical relevance, and treatment of pulse pressure (PP).
Main Methods:
- Literature review examining arterial circulation models (Windkessel and distributive).
- Analysis of factors influencing arterial wall behavior and PP.
- Evaluation of dietary, lifestyle, and pharmacological interventions affecting arterial properties.
Main Results:
- Increased arterial stiffness reduces compliance and enhances wave reflection, elevating PP.
- Aging, blood pressure, and atherosclerosis contribute to arterial stiffness and higher PP.
- Aerobic exercise and n-3 fatty acids may improve arterial behavior, while strength training can increase stiffness.
Conclusions:
- A distributed compliance model aids in understanding PP's causes, effects, and treatments.
- Interventions like ACE inhibitors may have direct arterial wall effects.
- Managing PP is crucial for cardiovascular health, with lifestyle and pharmacological approaches showing promise.
Abstract:
The goal of this study was to review the origin, clinical relevance and treatment of pulse pressure (PP). Elevated PP is increasingly being recognized as a risk factor for cardiovascular, particularly coronary, disease. Pulse pressure is discussed in terms of both Windkessel and distributive models of the arterial circulation. Pulse pressure arises from the interaction of cardiac ejection (stroke volume) and the properties of the arterial circulation. An increased stiffness of the aorta and large arteries leads to an increase in PP through a reduction in arterial compliance and effects on wave reflection. A number of factors are known to influence arterial wall behavior and, therefore, PP. In addition to the effects of aging and blood pressure on arterial wall elasticity, there is some evidence that atherosclerosis, per se, amplifies these effects. Thus, the relationship between PP and coronary disease may be bidirectional. A number of dietary and lifestyle interventions have been shown to modify large artery behavior. These include aerobic exercise training and consumption of n-3 fatty acids. Conversely, strength training is associated with an increase in arterial stiffness and a higher PP. The effects of antihypertensive medication have been extensively studied, but many studies are difficult to interpret because of concomitant change in blood pressure, and to a lesser degree, heart rate. However a number of studies do suggest direct arterial wall effects, particularly for angiotensin-converting enzyme inhibitors. A distributed compliance model of the arterial circulation provides a framework for understanding the causes, effects and potential treatment of elevations in PP.
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